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    • 44. 发明申请
    • Frequency Content Sort
    • 频率内容排序
    • US20130054579A1
    • 2013-02-28
    • US13215598
    • 2011-08-23
    • John T. Kennedy
    • John T. Kennedy
    • G06F17/30
    • H04N21/4334G06F17/30994H04N21/4147H04N21/432H04N21/4332H04N21/44204H04N21/44222
    • A receiver accumulates characteristic information by tracking content being presented. When the receiver determines to present a menu of recorded content, the receiver analyzes the accumulated information to rank the recorded content based on a frequency of the characteristics and sorts the menu based at least one the analysis. The receiver may present an instance of content when it is selected. In some implementations, the instances of content are recorded as part of recording multiple instances of content received via at least one broadcast wherein the multiple instances of content are all included in a same frequency band of the broadcast and are all encoded utilizing a same code word. In one or more implementations, the menu may include content information for one or more of the instances of content in the menu, such as the number of related instances of content also stored by the content receiver.
    • 接收机通过跟踪呈现的内容来累积特征信息。 当接收机确定呈现所记录的内容的菜单时,接收机分析累积的信息以根据特征的频率对记录的内容进行排序,并根据至少一个分析对菜单进行排序。 接收者可以在选择内容时呈现内容的实例。 在一些实现中,内容的实例被记录为记录通过至少一个广播接收的内容的多个实例的一部分,其中内容的多个实例都包括在广播的相同频带中,并且都使用相同的代码字进行编码 。 在一个或多个实现中,菜单可以包括用于菜单中的内容的一个或多个实例的内容信息,诸如内容接收器也存储的内容的相关实例的数量。
    • 47. 发明授权
    • Dielectric coupled CO2 slab laser
    • 介质耦合CO2平板激光器
    • US07263116B2
    • 2007-08-28
    • US10912507
    • 2004-08-05
    • Christian J. ShackletonPhillip J. GardnerAnthony J. DeMariaVernon SeguinJohn T. Kennedy
    • Christian J. ShackletonPhillip J. GardnerAnthony J. DeMariaVernon SeguinJohn T. Kennedy
    • H01S3/03H01S3/223H01S3/097
    • H01S3/0315H01S3/0388H01S3/0407H01S3/041H01S3/09705H01S3/0971H01S3/2232
    • A slab laser includes two elongated electrodes arranged spaced apart and face-to-face. Either one or two slabs of a solid dielectric material extend along the length of the electrodes between the electrodes. A discharge gap is formed either between one of the electrodes and one dielectric slab, or between two dielectric slabs. The discharge gap is filled with lasing gas. A pair of mirrors is configured and arranged to define a laser resonator extending through the gap. An RF potential is applied across the electrodes creating a gas discharge in the gap, and causing laser radiation to circulate in the resonator. Inserting dielectric material between the electrodes increases the resistance-capacitance (RC) time constant of the discharge structure compared with the RC time constant in the absence of dielectric material. This hinders the formation of arcs in the discharge, which enables the laser to operate with higher excitation power, higher lasing gas pressure, and higher output power than would be possible without the dielectric inserts.
    • 平板激光器包括间隔开并且面对面布置的两个细长电极。 一个或两个固体电介质材料板沿电极的电极长度延伸。 在一个电极和一个电介质板之间或两个电介质板之间形成放电间隙。 放电间隙充满激光气体。 一对反射镜被配置和布置成限定延伸穿过间隙的激光谐振器。 在电极上施加RF电位,在间隙中产生气体放电,并使激光辐射在谐振器中循环。 在不存在电介质材料的情况下,在电极间插入电介质材料会增加放电结构的电阻 - 电容(RC)时间常数。 这阻碍了放电中的电弧形成,这使得激光器能够在没有电介质插入件的情况下以更高的激发功率,更高的激光气体压力和更高的输出功率运行。